Michael Murrell

Affiliations: 
Yale University, New Haven, CT 
Area:
active matter
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"Michael Murrell"

Parents

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Harvey F. Lodish research assistant MIT (Cell Biology Tree)
Kevin J. Yarema research assistant Johns Hopkins (E-Tree)
Andre Levchenko research assistant 2001-2004 Johns Hopkins
Roger D Kamm grad student 2004-2009 MIT (E-Tree)
Cecile Sykes post-doc Institut Curie, Paris, France
Margaret L. Gardel post-doc 2009-2013 Chicago (Physics Tree)
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Publications

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Sakamoto R, Murrell MP. (2024) Composite branched and linear F-actin maximize myosin-induced membrane shape changes in a biomimetic cell model. Communications Biology. 7: 840
Banerjee DS, Freedman SL, Murrell MP, et al. (2024) Growth-induced collective bending and kinetic trapping of cytoskeletal filaments. Cytoskeleton (Hoboken, N.J.)
Ang I, Yousafzai MS, Yadav V, et al. (2024) Elastocapillary effects determine early matrix deformation by glioblastoma cell spheroids. Apl Bioengineering. 8: 026109
Sakamoto R, Murrell MP. (2024) F-actin architecture determines the conversion of chemical energy into mechanical work. Nature Communications. 15: 3444
Banerjee DS, Freedman SL, Murrell MP, et al. (2024) Growth-induced collective bending and kinetic trapping of cytoskeletal filaments. Biorxiv : the Preprint Server For Biology
Sun ZG, Yadav V, Amiri S, et al. (2023) Cofilin-mediated actin filament network flexibility facilitates 2D to 3D actomyosin shape change. European Journal of Cell Biology. 103: 151379
Amiri S, Muresan C, Shang X, et al. (2023) Intracellular tension sensor reveals mechanical anisotropy of the actin cytoskeleton. Nature Communications. 14: 8011
Lee SH, Yousafzai MS, Mohler K, et al. (2023) SPAK-dependent co-transporter activity mediates capillary adhesion and pressure during glioblastoma migration in confined spaces. Molecular Biology of the Cell. mbcE23030103
Sakamoto R, Banerjee DS, Yadav V, et al. (2023) Author Correction: Membrane tension induces F-actin reorganization and flow in a biomimetic model cortex. Communications Biology. 6: 470
Sakamoto R, Banerjee DS, Yadav V, et al. (2023) Membrane tension induces F-actin reorganization and flow in a biomimetic model cortex. Communications Biology. 6: 325
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